首页> 外文期刊>South African Journal of Geology: Being the Transaction of the Geological Society of South African: Syndie die Verhandelinge van die Geologiese Vereniging van Suid-Afrika >Petrogenesis of CU-NI Sulphide ores from O'Okiep and Kliprand, Namaqualand, South Africa: Constraints from Chalcophile metal contents
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Petrogenesis of CU-NI Sulphide ores from O'Okiep and Kliprand, Namaqualand, South Africa: Constraints from Chalcophile metal contents

机译:南非纳马夸兰市O'Okiep和Kliprand的CU-NI硫化物矿石的成岩作用:嗜硫金属含量的限制

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摘要

The petrogenesis of sulphide ores in the O'okiep district has remained controversial. Based mainly on the concentration of chalcophile metals (PGE, Cu, Ni), it is proposed that the sulphides segregated from a basaltic magma generated during melting of sub-continental lithospheric mantle. Sulphide saturation of the magma was delayed due to relatively high fO_2 until crustal contamination occurred during the advanced stages of differentiation. The immiscible sulphide melt was entrained and fractionated in dynamic magma conduits. Sulphides enriched in monosulphide solid solution (mss) component precipitated at depth in the Kliprand area of southern Namaqualand to form the Hondekloof deposits, whereas the O'okiep ores crystallised at shallower levels from highly fractionated residual sulphide liquids enriched in intermediate solid solution (iss). Sulphides of intermediate composition occur at Ezelsfontein. In the context of this model, the O'okiep intrusions could represent the proximal magmatic members of an TOCG suite of deposits, raising the prospect for additional IOCG deposits elsewhere in southern Africa. The model also predicts an enhanced potential at O'okiep for undiscovered Ni sulphide ores at depth.
机译:O'okiep地区的硫化矿成岩作用仍存在争议。主要基于嗜硫金属(PGE,Cu,Ni)的浓度,提出硫化物与亚大陆岩石圈地幔熔融过程中产生的玄武岩浆分离。岩浆的硫化物饱和度由于较高的fO_2而延迟,直到在分化的晚期阶段发生地壳污染为止。不混溶的硫化物熔体在动态岩浆管道中被夹带并分馏。富含一硫化物固溶体(mss)组分的硫化物在Namaqualand南部的克利普兰德地区深处沉淀,形成Hondekloof矿床,而O'okiep矿石则从富集了中等固溶体的高分馏残留硫化物液体中以较浅的水平结晶(瑞士) 。中间成分的硫化物存在于埃兹方丹。在这种模型的背景下,O'okiep侵入岩可能代表了TOCG矿床组的近岩浆岩成员,这为南部非洲其他地方的额外IOCG矿床提供了前景。该模型还预测了O'okiep深处未发现的硫化镍矿的潜力会增加。

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